ref [53] · 2507.17146 · notice #8705 · dispute
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Light-induced superconductivity in a stripe-ordered cuprate. Science 331, 189-191 (2011). [52] Mitrano, M. et al.Possible light-induced superconductiv- ity in k3c60 at high temperature. Nature 530, 461-464 (2016). [53] Shan, J.-Y. et al. Giant modulation of optical nonlinear- ity by floquet engineering. Nature 600, 235-239 (2021). URL https://doi.org/10.1038/s41586-021-04051-8 . [54] Zhou, S. et al. Pseudospin-selective floquet band engi- neering in black phosphorus. Nature 614, 75-80 (2023). URL https://doi.org/10.1038/s41586-022-05610-3 . [55] Afanasiev, D. et al. Controlling the anisotropy of a van der waals antiferromagnet with light. Sci- ence Advances 7, eabf3096 (2021). URL https:// www.science.org/doi/abs/10.1126/sciadv.
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Light-induced superconductivity in a stripe-ordered cuprate. Science 331, 189-191 (2011). [52] Mitrano, M. et al.Possible light-induced superconductiv- ity in k3c60 at high temperature. Nature 530, 461-464 (2016). [53] Shan, J.-Y. et al. Giant modulation of optical nonlinear- ity by floquet engineering. Nature 600, 235-239 (2021). URL https://doi.org/10.1038/s41586-021-04051-8 . [54] Zhou, S. et al. Pseudospin-selective floquet band engi- neering in black phosphorus. Nature 614, 75-80 (2023). URL https://doi.org/10.1038/s41586-022-05610-3 . [55] Afanasiev, D. et al. Controlling the anisotropy of a van der waals antiferromagnet with light. Sci- ence Advances 7, eabf3096 (2021). URL https:// www.science.org/doi/abs/10.1126/sciadv